4.7 Article

Investigation on TiO2-Cu/H2O hybrid nanofluid with slip conditions in MHD peristaltic flow of Jeffrey material

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JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY
卷 143, 期 3, 页码 1985-1996

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SPRINGER
DOI: 10.1007/s10973-020-09648-1

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Peristaltic flow; Jeffery material; Hybrid nanofluid; Slip conditions

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This study focuses on the slippage impact on the peristaltic transport of MHD hybrid nanofluids in an asymmetric channel, considering the effects of viscous dissipation and Hall current. The mathematical expressions are transformed into ordinary differential equations and numerically solved, showing the effects of various parameters on flow distributions through plots.
Slippage impacton peristaltic transport of MHD hybrid nanofluids (TiO2-Cu/H2O) in an asymmetric channel is addressed. Impact of viscous dissipation and Hall current are analyzed in the modeling as well. Constitutive expressions for viscoelastic Jeffery fluid are employed. The mathematical expressions of the problem are transformed into a set of ordinary differential equations by employing appropriate quantities. Well-known long wavelength assumption is invoked. The obtained dimensionless model is then numerically solved with the help of Adams-Bashforth method. The effects of sundry parameters on flow distributions are demonstrated via plots.

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